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Theoretical Lower Error Bound for Comparative Evaluation of Sensor Arrays in Magnetostatic Linear Inverse Problems

机译:静磁线性反问题中传感器阵列比较评估的理论下限误差

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We introduce a theoretical lower error bound for solutions to magnetostatic linear inverse problems and we propose it as a figure of merit for the comparative evaluation of sensor arrays. With the help of the proposed error bound, we demonstrate the superiority of three-axial biomagnetic sensor arrays applying truncated singular value decomposition analysis to a kernel matrix computed from boundary-element-method (BEM) models of the human torso for a biomagnetic application. In simulations, we found that, for a more complex five-compartment BEM model, the advantage of using three-axial measurements is more pronounced, compared to a three-compartment BEM model
机译:我们为静磁线性反问题的解决方案介绍了一个理论上的较低误差范围,并提出了它作为对传感器阵列进行比较评估的一个优点。借助提出的误差范围,我们展示了将三轴截断奇异值分解分析应用于从人体躯干的边界元方法(BEM)模型计算出的核矩阵的三轴生物磁传感器阵列的优越性,以进行生物磁应用。在仿真中,我们发现,对于更复杂的五室BEM模型,与三室BEM模型相比,使用三轴测量的优势更加明显

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